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The influence of thermal plasma profiles on low-frequency Alfvén eigenmode dynamics in a tokamak

机译:托卡马克中热等离子体轮廓对低频Alfvén本征模动力学的影响

摘要

The confinement of fast particles, present in a tokamak plasma as nuclear fusion products and through external heating, will be essential for any future fusion reactor. Fast particles can be expelled from the plasma through their interaction with Alfvén eigenmode (AE) instabilities. AEs can exist in gaps in the Alfvén continuum created by plasma equilibrium non-uniformities. In the ASDEX Upgrade tokamak, low-frequency modes in the frequency range from f ≈ 10 − 90kHz, including beta-induced Alfvén eigenmodes (BAEs) and lower frequency modes with mixed Alfvén and acoustic polarisations, have been observed. These exist in gaps in the Alfvén continuum opened up by geodesic curvature and finite plasma compressibility. In this thesis, a kinetic dispersion relation is solved numerically to investigate the influence of thermal plasma profiles on the evolution of these low-frequency modes during the sawtooth cycle. Using information gained from various experimental sources to constrain the equilibrium reconstructions, realistic safety factor profiles are obtained for the analysis using the CLISTE code. The results for the continuum accumulation point evolution are then compared with experimental results from ASDEX Upgrade during periods of ICRH only as well as for periods with both ICRH and ECRH applied simultaneously. It is found that the diamagnetic frequency plays an important role in influencing the dynamics of BAEs and low-frequency acoustic Alfvén eigenmodes, primarily through the presence of gradients in the thermal plasma profiles. Different types of modes that are observed during discharges heated almost exclusively by ECRH were also investigated. These include electron internal transport barrier (eITB) driven modes, which are observed to coincide with the occurrence of an eITB in the plasma during the low-density phase of the discharge. Also observed are BAE-like modes and edge-TAEs, both of which occur during the H-mode phase of the discharge.
机译:托卡马克等离子体中作为核聚变产物并通过外部加热而存在的快速粒子的限制,对于任何未来的聚变反应堆都是必不可少的。快速粒子可以通过与Alfvén本征模(AE)不稳定性相互作用而从等离子体中排出。 AE可能存在于血浆平衡不均匀性造成的Alfvén连续体的间隙中。在ASDEX升级托卡马克中,已经观察到f≈10 − 90kHz频率范围内的低频模式,包括β诱导的Alfvén本征模式(BAE)和具有Alfvén和声极化混合的低频模式。这些存在于大地曲率和有限的等离子体可压缩性打开的Alfvén连续体的间隙中。本文通过数值求解动力学色散关系,研究了热等离子体轮廓对锯齿波周期中这些低频模式演变的影响。使用从各种实验来源获得的信息来约束平衡重建,可以使用CLISTE代码获得实际的安全系数曲线,以进行分析。然后将连续累积点演化的结果与仅在ICRH期间以及同时应用ICRH和ECRH的期间的ASDEX Upgrade的实验结果进行比较。发现反磁性频率主要通过热等离子体轮廓中的梯度的存在而在影响BAE和低频声Alfvén本征模式的动力学中起重要作用。还研究了几乎完全由ECRH加热的放电过程中观察到的不同类型的模式。这些包括电子内部传输势垒(eITB)驱动的模式,这些模式与在放电的低密度阶段在等离子体中出现eITB一致。还观察到类似BAE的模式和边缘TAE,它们都在放电的H模式阶段发生。

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    Curran Diarmuid B.;

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  • 年度 2014
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  • 正文语种 en
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